about
Inhibition of pre-mRNA splicing by a synthetic Blom7α-interacting small RNAUbiquitous overexpression of the DNA repair factor dPrp19 reduces DNA damage and extends Drosophila life spanMethylation of ribosomal RNA by NSUN5 is a conserved mechanism modulating organismal lifespan.Urine is a novel source of autologous mesenchymal stem cells for patients with epidermolysis bullosa.SNEVhPrp19/hPso4 Regulates Adipogenesis of Human Adipose Stromal Cells.Label-free live cell imaging by Confocal Raman Microscopy identifies CHO host and producer cell lines.High levels of oncomiR-21 contribute to the senescence-induced growth arrest in normal human cells and its knock-down increases the replicative lifespan.Erratum: Ubiquitous overexpression of the DNA repair factor dPrp19 reduces DNA damage and extends Drosophila life span.Age-Induced Changes in White, Brite, and Brown Adipose Depots: A Mini-Review.The Dual Role of Cellular Senescence in Developing Tumors and Their Response to Cancer Therapy.Long-term exposure of immortalized keratinocytes to arsenic induces EMT, impairs differentiation in organotypic skin models and mimics aspects of human skin derangements.OPP labelling enables total protein synthesis quantification in CHO production cell lines at the single-cell level.An approach for liposome immobilization using sterically stabilized micelles (SSMs) as a precursor for bio-layer interferometry-based interaction studies.Blocking negative effects of senescence in human skin fibroblasts with a plant extract.Small extracellular vesicles and their miRNA cargo are anti-apoptotic members of the senescence-associated secretory phenotype.Towards frailty biomarkers: Candidates from genes and pathways regulated in aging and age-related diseasesThe thiosemicarbazone MeNNMe induces paraptosis by disrupting the ER thiol redox homeostasis based on protein disulfide isomerase inhibitionModelling physical resilience in ageing miceInhibition of profibrotic microRNA-21 affects platelets and their releasateGrundlagen der biologischen AlterungOrganotypic human skin culture models constructed with senescent fibroblasts show hallmarks of skin agingModulation of mammalian translation by a ribosome-associated tRNA halfLoss of the ribosomal RNA methyltransferase NSUN5 impairs global protein synthesis and normal growthRaman fingerprints as promising markers of cellular senescence and agingExtracellular Vesicles in Human Skin: Cross-Talk from Senescent Fibroblasts to Keratinocytes by miRNAsA Novel Caenorhabditis Elegans Proteinopathy Model Shows Changes in mRNA Translational Frameshifting During Aging
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description
researcher ORCID ID = 0000-0003-2025-0739
@en
wetenschapper
@nl
name
Markus Schosserer
@ast
Markus Schosserer
@en
Markus Schosserer
@es
Markus Schosserer
@nl
type
label
Markus Schosserer
@ast
Markus Schosserer
@en
Markus Schosserer
@es
Markus Schosserer
@nl
prefLabel
Markus Schosserer
@ast
Markus Schosserer
@en
Markus Schosserer
@es
Markus Schosserer
@nl
P106
P1153
55274265600
P31
P496
0000-0003-2025-0739